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#include "spires_interface.h"
#include <spires.h>
#include <stdlib.h>
#include <stdio.h>
#include <stdint.h>
int collect_reservoir_states(
const spires_reservoir *reservoir,
const double *input_series,
size_t series_length,
Reservoir_State_Matrix *result
) {
//error checking
//RIP
//clear the result first
//
result->num_samples = 0;
result->num_features = 0;
result->states = NULL;
const size_t num_inputs = spires_num_inputs(reservoir);
const size_t num_neurons = spires_num_neurons(reservoir);
if (series_length > SIZE_MAX / num_neurons || series_length * num_neurons
> SIZE_MAX / sizeof(double)) {
fprintf(stderr, "matrix size overloaded!!");
return -1;
}
double *states = malloc(num_neurons * series_length * sizeof(*states));
if (!states) {
fprintf(stderr, "failed to allocate memory for states");
return -1;
}
spires_status status = spires_reservoir_reset(reservoir);
if (status != SPIRES_OK) {
fprintf(stderr, "reservoir reset error");
free(states);
return -1;
}
// build state_matrix
for (size_t i = 0; i < series_length; i++) {
const double *current_input = &input_series[i * num_inputs];
status = spires_step(reservoir, current_input);
if (status != SPIRES_OK){
free(states);
return -1;
}
double *current_state = &states[i * num_neurons];
status = spires_read_reservoir_state(reservoir, current_state);
if (status != SPIRES_OK){
free(states);
return -1;
}
}
result->num_samples = series_length;
result->num_features = num_neurons;
result->states = states;
return 0;
}
void free_reservoir_state_matrix(Reservoir_State_Matrix *matrix) {
if (!matrix) {
return;
}
free(matrix->states);
matrix->states = NULL;
matrix->num_samples = 0;
matrix->num_features = 0;
}
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